Trane UH-PRC001-EN manual Performance Data, Entering WaterTemperature

Page 40
Manual background

Performance

Data

Table PD-5 (Continued) – Model P-L Unit Heater HotWater Capacities – 60°F Ent.AirTemp. (Capacities shown are for units with all Air Ports open)

(Conversion Factors inTable SP-11 Apply Only to 200 F Entering WaterTemperature Columns)

Entering WaterTemperature

 

Water

 

260 F

 

 

 

300 F

 

 

 

 

340 F

 

 

 

380 F

 

 

Unit

Temp.

 

 

 

PD

PD

 

 

 

PD

PD

 

 

 

PD

PD

 

 

 

PD

PD

Size

Drop °F

MBH

GPM

FT S.W.T. H.W.T.

MBH

GPM

FT

S.W.T. H.W.T

MBH

GPM

FT S.W.T. H.W.T

MBH

GPM

FT S.W.T. H.W.T.

42-P-L

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

CFM 668

50

24.7

1.02

94.0

.01

.02

32.9

1.36

105.4

.02

.03

41.1

1.69

116.7

.03

.04

RPM 1550

60

27.9

.96

98.6

.01

.01

36.2

1.24

109.9

.02

.02

HP 1/40

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

42-P-L

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

CFM 470

50

18.0

.74

95.2

.01

.01

23.7

.98

106.4

.01

.01

29.4

1.21

117.6

.02

.02

RPM 1150

60

— — — — —

26.1

.90

111.2

.01

.01

HP 1/40

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

64-P-L

50

33.3

1.37

85.6

.02

.03

47.3

1.95

96.3

.05

.06

61.2

2.52

107.0

.07

.10

75.2

3.10

117.7

.11

.14

CFM 1200

60

26.1

.90

80.0

.01

.01

40.0

1.37

90.7

.02

.03

53.9

1.85

101.4

.04

.05

67.9

2.33

112.1

.06

.08

RPM 1550

80

39.4

1.01

90.3

.01

.02

53.3

1.37

101.0

.02

.03

HP 1/20

100

— — — — —

38.8

.80

89.8

.01

.01

64-P-L

50

26.5

1.09

88.3

.02

.02

37.3

1.54

99.9

.03

.04

48.2

1.99

111.5

.05

.06

59.0

2.43

123.1

.07

.09

CFM 862

60

31.8

1.09

94.0

.02

.02

42.6

1.46

105.6

.03

.03

53.5

1.84

117.2

.04

.05

RPM 1150

80

31.5

.81

93.7

.01

.01

42.4

1.09

105.3

.01

.02

HP 1/20

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

80-P-L

50

39.7

1.64

86.9

.02

.03

56.1

2.31

98.0

.04

.05

72.5

2.99

109.1

.06

.08

88.9

3.66

120.3

.09

.12

CFM 1360

60

31.2

1.07

81.2

.01

.01

47.6

1.64

92.3

.02

.03

64.0

2.20

103.4

.04

.05

80.4

2.76

114.5

.05

.07

RPM 1550

80

47.1

1.21

91.9

.01

.01

63.5

1.64

103.0

02

.03

HP 1/20

100

— — — — —

46.6

.96

91.6

.01

.01

80-P-L

50

31.6

1.30

89.3

.01

.02

44.5

1.83

101.2

.03

.03

57.4

2.36

113.1

.04

.05

70.2

2.89

125.1

.06

.08

CFM 995

60

37.9

1.30

95.1

.01

.02

50.8

1.75

107.1

.02

.03

63.7

2.19

119.0

.03

.04

RPM 1150

80

37.7

.97

94.9

.01

.01

50.6

1.30

106.8

.01

.02

HP 1/20

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

102-P-L

50

65.2

2.69

94.3

.07

.09

85.4

3.52

104.9

.11

.15

105.7

4.36

115.6

.17

.22

126.0

5.19

126.3

.23

.30

CFM 1752

60

57.9

1.99

90.5

.04

.05

78.2

2.69

101.1

.07

.09

98.5

3.38

111.8

.10

.13

118.7

4.08

122.5

.14

.19

RPM 1070

80

43.4

1.12

82.9

.01

.02

63.7

1.64

93.5

.03

.04

84.0

2.16

104.2

.04

.06

104.3

2.69

114.8

.07

.09

HP 1/8

100

49.2

1.01

85.9

.01

.01

69.5

1.43

96.6

.02

.03

89.8

1.85

107.2

.03

04

 

120

55.0

.95

88.9

.01

.01

75.3

1.29

99.6

.02

.02

 

50

56.3

2.32

94.6

.05

.07

73.6

3.03

105.2

.09

.11

90.9

3.75

115.9

.12

.16

108.2

4.46

126.5

.17

.22

102-P-L 60

50.2

1.72

90.9

.03

.04

67.5

2.32

101.5

.05

.07

84.8

2.91

112.2

.08

.10

102.1

3.51

122.8

.11

.14

CFM 1499

80

55.4

1.43

94.1

.02

.03

72.7

1.87

104.7

.03

.04

90.0

2.32

115.3

.05

.07

RPM 850

100

60.6

1.25

97.3

.02

.02

77.9

1.61

107.9

.03

.03

HP 1/8

120

— — — — —

65.8

1.13

100.5

.01

.02

 

50

84.8

3.49

95.8

.11

.15

111.5

4.59

107.1

.19

.24

138.2

5.69

118.4

.28

.36

164.8

6.79

129.7

.38

.49

122-P-L 60

75.1

2.58

91.1

.06

.08

101.7

3.49

103.0

.11

.15

128.4

4.41

114.3

.17

.22

155.1

5.33

125.6

.24

.31

CFM 2180

80

55.6

1.43

83.5

.02

.03

82.3

2.12

94.8

.04

.06

109.0

2.81

106.1

.07

.10

135.7

3.49

117.4

.11

.14

RPM 1100

100

62.8

1.29

86.6

.02

.02

89.5

1.84

97.8

.03

.04

116.2

2.39

109.1

.05

.07

HP 1/6

120

70.0

1.20

89.6

.01

.02

96.7

1.66

100.9

.03

.04

 

140

— — — — —

77.3

1.14

92.7

.01

.02

 

50

101.0

4.16

99.4

.15

.21

131.1

5.40

111.2

.24

.33

161.2

6.64

122.9

.35

.47

191.2

7.88

134.7

.48

.64

 

60

91.1

3.13

95.6

.09

.12

121.2

4.16

107.3

.15

.20

151.3

5.20

119.1

.22

.30

181.4

6.23

130.8

.31

.41

146-P-L 80

71.4

1.84

87.9

.03

.05

101.5

2.61

99.6

.06

.09

131.5

3.39

111.4

.01

.14

161.6

4.16

123.1

.15

.19

CFM 2360

100

81.7

1.68

91.9

.03

.04

111.8

2.30

103.7

.05

.07

141.9

2.92

115.4

.08

.10

RPM 1100

120

92.0

1.58

95.9

.02

.03

122.1

2.10

107.7

.04

.05

HP 1/6

140

72.3

1.06

88.2

.01

.02

102.4

1.51

100.0

.02

.03

 

160

— — — — —

82.6

1.06

92.3

.01

.02

 

50

119.1

4.91

97.6

.14

.19

154.5

6.37

108.8

.23

.30

189.9

7.83

119.9

.33

.43

225.3

9.29

131.1

.44

.59

 

60

107.6

3.69

93.9

.08

.11

142.9

4.91

105.1

.14

.19

178.3

6.13

116.3

.21

.27

213.7

7.34

127.5

.28

.38

166-P-L 80

84.4

2.17

86.6

.03

.04

119.8

3.09

97.8

.06

.08

155.2

4.00

109.0

.09

.12

190.6

4.91

120.2

.13

.18

CFM 2920

100

96.7

1.99

90.5

.03

.03

132.1

2.72

101.7

.05

.06

167.5

3.45

112.9

.07

.09

RPM 1100

120

108.9

1.87

94.4

.02

.03

144.3

2.48

105.6

.04

.05

HP 1/6

140

85.8

1.26

87.1

.01

.01

121.2

1.78

98.2

.02

.03

 

160

— — — — —

98.0

1.26

90.9

.01

.01

40

UH-PRC001-EN

Image 40
Contents UH-PRC001-EN Propeller Unit Heaters/Unitary17.4 to 705.6 MBh OctoberIntroduction The Industrial Designed Model P Unit HeaterContents Features and BenefitsSelection Procedure Electric PowerFeatures and Benefits Put HeatWhere It’s NeededThe Model S Coil The Model P MotorCompact Design Rectangular Draw-ThruCoilsModel S Model PFeatures and Benefits External Couplings Features and BenefitsGeneral Rules Application ConsiderationsTypical Factory General Notes HotWater System - Using Circulating PumpApplication Considerations Vapor orVacuum System HotWater System with Circulating PumpApplication Considerations Figure AC-4 Figure AC-5 Figure AC-6Selection Procedure Trane Propeller Unit HeatersBTU Requirements Type of BuildingFormula Determining Special Steam CapacitiesUseful Data Equivalent Direct RadiationD BE Model S NomenclatureSelection Procedure Model S Model PSelection Procedure Table Based on 2 PSIG and 60 F Entering AirSelection Procedure 2 Lbs. Steam 60 F Entering AirTempSelection Procedure 2 Lbs. Steam 60 F Entering AirTempSelection Procedure Table SP-6- Maximum Spread FtAdditional Selection Data Model P NomenclatureMotor and Fan Speeds Selection ProcedureSelection Procedure HotWater Selection ExampleSelection Procedure StepCorrection Factors for Propylene Glycol/Water Propylene GlycolPropylene GlycolMODEL P UNIT HEATER Model Number DescriptionMotors Model Number Description D B EMotors Performance Data Performance Data WaterPerformance Data WaterPerformance Data WaterPerformance Data Entering WaterTemperaturePerformance Data Entering WaterTemperaturePerformance Data 117.6Performance Data Entering WaterTemperaturePerformance Data Entering WaterTemperaturePerformance Data WaterPerformance Data WaterPerformance Data WaterPerformance Data 115.1Performance Data WaterPerformance Data WaterPerformance Data Entering WaterTemperaturePerformance Data Entering WaterTemperaturePerformance Data Entering WaterTemperaturePerformance Data 100.1Performance Data Entering WaterTemperaturePerformance Data Entering WaterTemperatureElectric Power Electric Power AccessoryElectric Power ModelDimensions and Weights Figure DW-1Motor MountType-1 Motor MountType-2Dimensions and Weights Figure DW-2Dimensions and Weights In Dimensions Figure DW-4Figure DW-3 Table DW-4- Louver Cone Diffuser RoughingMechanical Specifications Model P GeneralCasing Model S GeneralPage NRTL/C TheTrane Company